用于增强气体储存和分离的聚合物封装框架材料

IF 5.7 Q2 CHEMISTRY, PHYSICAL
Grace E. B. Redwine, Wade A. Braunecker* and Thomas Gennett*, 
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引用次数: 0

摘要

在更广泛的储能领域,聚合物封装框架(PEF)材料近年来取得了显着增长,对各种应用产生了变革性影响。本文详细介绍了pef的设计、合成及其在气体储存和分离中的应用的最新进展。在对现有文献进行全面调查之后,本文深入探讨了控制PEF合成的机制考虑和基本原则。重点放在共价和配位共价接枝方法,物理共混,非溶剂利用,和各种气相沉积技术。讨论批判性地评估了这些合成方法的优点和缺点,考虑了诸如接枝密度,涂层厚度以及与传统框架材料相比与可加工性和稳定性相关的其他物理性质等因素。特别注意聚合物涂层对气体吸附分析的影响。最后,总结了PEF领域的显著成就和进展,包括混合基质膜(MMM)技术、框架形状因素的改进以及化学和机械稳定性的增强。这篇综述的最后为研究人员提供了有价值的观点,强调了PEF材料目前面临的差距和挑战,为未来的创新铺平了道路,以帮助解决全球能源挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymer Encapsulated Framework Materials for Enhanced Gas Storage and Separations

Within the broader field of energy storage, polymer-encapsulated framework (PEF) materials have witnessed remarkable growth in recent years, with transformative implications for diverse applications. This comprehensive review discusses in detail the latest advancements in the design, synthesis, and applications of PEFs in gas storage and separations. Following a thorough survey of existing literature, the article delves into mechanistic considerations and foundational principles governing PEF synthesis. Emphasis is placed on covalent and coordinative covalent grafting methods, physical blending, nonsolvent utilization, and various vapor deposition techniques. The discussion critically evaluates the advantages and disadvantages of these synthesis approaches, considering factors such as grafting density, coating thickness, and other physical properties relevant to processability and stability in comparison to traditional framework materials. Special attention is given to the impact of polymer coatings on gas adsorption analysis. Finally, notable accomplishments and advancements in the PEF field, including mixed matrix membrane (MMM) technology, improvements in framework form factors, and enhanced chemical and mechanical stability are summarized. This review concludes by offering valuable perspective for researchers, highlighting gaps and challenges that confront the current state-of-the-art in PEF materials, paving the way for future innovations that are poised to help address global energy challenges.

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来源期刊
ACS Materials Au
ACS Materials Au 材料科学-
CiteScore
5.00
自引率
0.00%
发文量
0
期刊介绍: ACS Materials Au is an open access journal publishing letters articles reviews and perspectives describing high-quality research at the forefront of fundamental and applied research and at the interface between materials and other disciplines such as chemistry engineering and biology. Papers that showcase multidisciplinary and innovative materials research addressing global challenges are especially welcome. Areas of interest include but are not limited to:Design synthesis characterization and evaluation of forefront and emerging materialsUnderstanding structure property performance relationships and their underlying mechanismsDevelopment of materials for energy environmental biomedical electronic and catalytic applications
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